Mismer D, Michael W M, Laverty T R, Rubin G M
Department of Biochemistry, University of California, Berkeley 94720.
Genetics. 1988 Sep;120(1):173-80. doi: 10.1093/genetics/120.1.173.
We have analyzed the cis-acting regulatory sequences of the Drosophila melanogaster Rh2 gene that encodes the protein component of a rhodopsin which is expressed in ocellar photoreceptor cells. DNA fragments containing the start point of transcription of the Rh2 gene were fused to either the Escherichia coli chloramphenicol acetyltransferase (CAT) or lacZ (beta-galactosidase) genes and introduced into the Drosophila germline by P-element-mediated transformation. Expression of the E. coli genes was then used to assay the ability of various sequences from the Rh2 gene to confer upon the indicator genes the Rh2 pattern of expression. Fragments containing between 4.3 kb and 183 bp upstream of the start of transcription plus the first 32 bp of the 5'-untranslated leader were found to result in nearly identical levels of head-specific CAT expression. Deletion of Rh2 sequences distal to position -112 bp resulted in loss of detectable CAT expression from these Rh2/CAT fusion constructs. We have, therefore, defined a region essential for head-specific expression of the Rh2 gene to a region extending from -183 to -112. We have determined the DNA sequence of the Rh2 promoter from -448 to +32 and have found an 11-bp sequence which is also present in the upstream flanking sequences of two other photoreceptor-specific genes (ninaE and ninaC). By histochemical staining of beta-galactosidase expressed under the control of the Rh2 promoter and by analyzing the effect of the ocelliless mutation on the expression of an Rh2/CAT fusion gene, we have been able to demonstrate that this promoter is active in ocelli.
我们分析了果蝇Rh2基因的顺式作用调控序列,该基因编码一种视紫红质的蛋白质成分,在单眼感光细胞中表达。将含有Rh2基因转录起始点的DNA片段与大肠杆菌氯霉素乙酰转移酶(CAT)或lacZ(β-半乳糖苷酶)基因融合,并通过P因子介导的转化导入果蝇种系。然后利用大肠杆菌基因的表达来检测Rh2基因的各种序列赋予指示基因Rh2表达模式的能力。发现含有转录起始点上游4.3 kb至183 bp加上5'-非翻译前导序列的前32 bp的片段导致头部特异性CAT表达水平几乎相同。删除-112 bp位置远端的Rh2序列导致这些Rh2/CAT融合构建体中可检测到的CAT表达丧失。因此,我们将Rh2基因头部特异性表达所必需的区域定义为从-183延伸至-112的区域。我们测定了Rh2启动子从-448至+32的DNA序列,发现一个11 bp的序列也存在于另外两个感光细胞特异性基因(ninaE和ninaC)的上游侧翼序列中。通过对在Rh2启动子控制下表达的β-半乳糖苷酶进行组织化学染色,并分析无单眼突变对Rh2/CAT融合基因表达的影响,我们能够证明该启动子在单眼中具有活性。